首页> 外文会议>Iron 0re 2002 Conference Sep 9-11, 2002 Perth, Western Australia >Upgrading Processes in BIF-Derived Iron Ore Deposits―Implications for Ore Genesis and Downstream Mineral Processing
【24h】

Upgrading Processes in BIF-Derived Iron Ore Deposits―Implications for Ore Genesis and Downstream Mineral Processing

机译:BIF衍生铁矿床的升级过程—对矿床成因和下游矿物加工的影响

获取原文
获取原文并翻译 | 示例

摘要

Ore textures in Australian BIF-derived ores are quite complex and have formed the basis for ore genesis models, which includes hypogene upgrading or supergene upgrading then regional metamorphism for the microplaty hematite ores and supergene upgrading for the martite-goethite ores. Despite a high level of ore texture knowledge, little is known about the spatial distribution of ore textures within deposits or their relationship to downstream processing. This paper describes a new iron ore texture classification system to better understand the vertical textural zonation characteristics of Australian BIF-derived deposits, the interpreted role of recent supergene upgrading processes on modifying primary ore textures and their implications for downstream mineral processing. The iron ore textural classification scheme presented uses textural groupings defined on the basis of similarities in mineralogy, ore texture, porosity, mineral associations and hardness. The scheme is non-genetic and has been successfully applied to deposits in the Pilbara, Yilgarn and Gawler cratons. The main ore texture groups include dense martite/hematite, microplaty hematite, microplaty hematite-goethite, martite-goethite, goethite-martite and goethite-rich. Each group can be further subdivided into physically hard to softer subcategories. The ore textural groups can be divided into those interpreted to be associated with primary replacement of BIF and secondary textures resulting from more recent modification by near-surface hydration or dehydration processes. A schematic vertical section through BIF-derived deposits consists (from surface) of detritals underlain by a carapace, both of which may have been eroded, followed by a hydrated zone with replacement of primary ore martite and microplaty hematite by vitreous goethite. The hydrated zone is underlain by 0.2-6 m thick zones of intense dehydration and textural infilling of porosity with hematite and hydrohematite. Immediately below the dehydration zone is a strong zone of leaching, where more porous and friable ore textures occur, followed underneath by a gradational contact with primary ore. Secondary supergene processes can impact on beneficiation with hydration and leaching resulting in more difficult density separations at the concentrator stage due to reductions in density differences between ore and gangue and loss of heavy media into pores. Supergene modification of primary BIF-derived ore textures can substantially change lump metallurgical properties, with hydration and dehydration favourably increasing lump yield but reducing resistance to thermal shock whilst leaching will give the opposing outcome. The lump properties of ore textural groups appear to be relatively consistent within and between the iron ore deposits examined.
机译:澳大利亚BIF来源的矿石中的矿石质地非常复杂,并已成为矿石成因模型的基础,其中包括先生质升级或表观遗传升级,然后是微型板状赤铁矿矿石的区域变质,而马蒂特-针铁矿矿石的超基因升级。尽管对矿石质地的了解很高,但对于矿床内矿石质地的空间分布及其与下游加工的关系知之甚少。本文介绍了一种新的铁矿石纹理分类系统,以更好地了解澳大利亚BIF来源矿床的垂直纹理带状分布特征,最新超基因升级过程对修饰初级矿石纹理的解释作用及其对下游矿物加工的影响。提出的铁矿石质地分类方案使用了基于矿物学,矿石质地,孔隙度,矿物组成和硬度的相似性定义的质地分组。该方案是非遗传的,已成功应用于Pilbara,Yilgarn和Gawler克拉通的矿床。主要的矿石质地组包括致密的马氏体/赤铁矿,微板赤铁矿,微板赤铁矿-针铁矿,马氏体-针铁矿,针铁矿-玛铁矿和富针铁矿。每个组可以进一步细分为物理上较难使用的子类别。矿石的质地类别可分为那些被解释为与BIF的初次置换和近地水化或脱水过程最近的修改所产生的二次质地有关的那些。 BIF派生矿床的示意性垂直剖面图(从表层看)是由被甲壳覆盖的碎屑(从表层来看),两者均已被侵蚀,其后是水合带,其中被玻璃铁针石取代了原矿的马氏体和微片赤铁矿。水化层位于0.2-6 m厚的深度脱水层之下,赤铁矿和水赤铁矿的孔隙结构充填。紧接在脱水区下方的是一个强浸出区,在这里出现了更多的多孔和易碎的矿石质地,随后在下面与初级矿石逐渐接触。次生超生过程会影响水化和浸出的选矿作用,这是由于矿石和脉石之间的密度差异减小以及重介质损失进入孔隙而导致精矿阶段密度分离更加困难。 BIF衍生的原始矿石结构的超基因修饰可以显着改变块状冶金性能,水合和脱水有利地提高了块状产量,但降低了对热冲击的抵抗力,同时浸出将产生相反的结果。矿质组织的团块性质似乎在所检查的铁矿内部和之间是相对一致的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号